Gall Daniel L, Ralph John, Donohue Timothy J, Noguera Daniel R
U.S. Department of Energy's Great Lakes Bioenergy Research Center, Wisconsin Energy Institute, University of Wisconsin, Madison, WI 53726, United States.
U.S. Department of Energy's Great Lakes Bioenergy Research Center, Wisconsin Energy Institute, University of Wisconsin, Madison, WI 53726, United States; Department of Biochemistry, University of Wisconsin, Madison, WI 53706, United States.
Curr Opin Biotechnol. 2017 Jun;45:120-126. doi: 10.1016/j.copbio.2017.02.015. Epub 2017 Mar 24.
The biochemical properties of lignin present major obstacles to deriving societally beneficial entities from lignocellulosic biomass, an abundant and renewable feedstock. Similar to other biopolymers such as polysaccharides, polypeptides, and ribonucleic acids, lignin polymers are derived from multiple types of monomeric units. However, lignin's renowned recalcitrance is largely attributable to its racemic nature and the variety of covalent inter-unit linkages through which its aromatic monomers are linked. Indeed, unlike other biopolymers whose monomers are consistently inter-linked by a single type of covalent bond, the monomeric units in lignin are linked via non-enzymatic, combinatorial radical coupling reactions that give rise to a variety of inter-unit covalent bonds in mildly branched racemic polymers. Yet, despite the chemical complexity and stability of lignin, significant strides have been made in recent years to identify routes through which valued commodities can be derived from it. This paper discusses emerging biological and biochemical means through which degradation of lignin to aromatic monomers can lead to the derivation of commercially valuable products.
木质素的生化特性给从木质纤维素生物质(一种丰富的可再生原料)中获取对社会有益的物质带来了主要障碍。与多糖、多肽和核糖核酸等其他生物聚合物类似,木质素聚合物由多种类型的单体单元衍生而来。然而,木质素著名的难降解性很大程度上归因于其外消旋性质以及其芳香族单体通过多种共价单元间连接方式相连。事实上,与其他单体通过单一类型共价键持续相连的生物聚合物不同,木质素中的单体单元通过非酶促的组合自由基偶联反应相连,这在轻度支化的外消旋聚合物中产生了多种单元间共价键。然而,尽管木质素具有化学复杂性和稳定性,但近年来在确定从木质素中获取有价值商品的途径方面已经取得了重大进展。本文讨论了新兴的生物学和生物化学方法,通过这些方法将木质素降解为芳香族单体可导致获得具有商业价值的产品。